用于 EPB 盾构隧道的高饱和度粘土的调理和再循环指数的定量相互关系

IF 6.7 1区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Tunnelling and Underground Space Technology Pub Date : 2024-09-17 DOI:10.1016/j.tust.2024.106083
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引用次数: 0

摘要

人们普遍认为,在土压平衡盾构(EPBS)隧道挖掘过程中,泡沫对土壤性质的改善作用可以通过一些调节评价指标(如抗剪强度、流动性和可压缩性)很好地表征出来。在过去几十年中,全球 EPBS 的数量大幅增加。因此,将 EPBS 泥浆废物回收用于其他用途变得非常重要,在这种情况下,估算泡沫调节土的回收潜力具有重要的现实意义。尽管大量研究证明脱水性能是评估粘土废料可再利用性的最重要指标之一,但人们对泡沫调理粘土的脱水行为及其与常见调理评价指标之间的定量相互关系仍缺乏正确的认识。为了了解泡沫对与实际隧道天然粘土相当的高饱和度粘土的综合影响,进行了一系列实验室实验,包括排水剪切试验、流动性试验和真空过滤试验。考虑到过滤时间和压力的影响,引入了比电阻的概念来表征脱水性能。利用低场核磁共振测试分析了调理和脱水阶段的水分迁移机制。结果发现,增加饱和度和泡沫注入率可显著提高流动性(垂直和水平坍落度)、可压缩性和脱水性,但会降低排水剪切强度。注入的泡沫使水分在调节过程中从微孔向中孔迁移,但在脱水过程中又从中孔向微孔和大孔迁移。因此,建立了定量表达式来确定调节指数和脱水指数之间的相互关系。此外,还证明了比电阻是表征泡沫对高饱和度粘土的调理性能的有效替代变量。最后,还提供了不同评价指数的新应用图表,可帮助工程师有效评估泡沫对粘土的影响,从而为 EPBS 隧道施工实践贡献宝贵的知识。
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Quantitative interrelations of conditioning and recycling indices of high-saturation clay soils for EPB shield tunnelling

It is widely recognized that the improvement effects of the foam on the soil properties during earth pressure balance shield (EPBS) tunnelling can be well characterized by some conditioning evaluation indices such as shear strength, flowability, and compressibility. The number of EPBS has increased significantly worldwide in the past few decades. Consequently, recycling the EPBS muck wastes for other applications becomes important, and in this context, estimating the recycling potential of foam-conditioned soils is of great practical significance. Although numerous studies have proved dewaterability to be one of the most important indices to assess the reusability of clay muck wastes, the dewatering behaviors of foam-conditioned clay soils and their quantitative interrelations with common conditioning evaluation indices are still not properly understood. To understand the comprehensive effects of foams on high-saturation clay soil that is comparable to natural clays of real tunnels, a series of laboratory experiments were carried out, including undrained shear tests, flowability tests, and vacuum filtration tests. The concept of specific resistance was introduced to characterize the dewaterability, taking the effects of filtration time and pressure into consideration. The moisture migration mechanisms at both the conditioning and dewatering stages were analyzed using low-field nuclear magnetic resonance tests. It was found that increasing the degree of saturation and the foam injection ratio could lead to a significant enhancement in the flowability (vertical and horizontal slumps), compressibility, and dewaterability, but a reduction in the undrained shear strength. The injected foams caused the moisture to migrate from micropores to mesopores during conditioning, but from mesopores to micropores and macropores during dewatering. Accordingly, quantitative expressions were established to determine the interrelations between conditioning and dewatering indices. The specific resistance was also demonstrated to be an effective alternative variable to characterize the conditioning performance of foams for high-saturation clay soils. Finally, a new application diagram of different evaluation indices, which can assist engineers in effectively assessing the foam’s effects on clay soils, was provided to contribute valuable knowledge to EPBS tunnelling practices.

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来源期刊
Tunnelling and Underground Space Technology
Tunnelling and Underground Space Technology 工程技术-工程:土木
CiteScore
11.90
自引率
18.80%
发文量
454
审稿时长
10.8 months
期刊介绍: Tunnelling and Underground Space Technology is an international journal which publishes authoritative articles encompassing the development of innovative uses of underground space and the results of high quality research into improved, more cost-effective techniques for the planning, geo-investigation, design, construction, operation and maintenance of underground and earth-sheltered structures. The journal provides an effective vehicle for the improved worldwide exchange of information on developments in underground technology - and the experience gained from its use - and is strongly committed to publishing papers on the interdisciplinary aspects of creating, planning, and regulating underground space.
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